Til hovedinnhold
Norsk English

Three-dimensional Linear Eddy Modeling of a Turbulent Lifted Hydrogen Jet Flame in a Vitiated Co-flow

Sammendrag

A new methodology for modeling and simulation of reactive flows is reported in which a 3D formulation of the Linear Eddy Model (LEM3D) is used as a post-processing tool for an initial RANS simulation. In this hybrid approach, LEM3D complements RANS with unsteadiness and small-scale resolution in a computationally efficient manner. To demonstrate the RANS-LEM3D model, the hybrid model is applied to a lifted turbulent N2-diluted hydrogen jet flame in a vitiated co-flow of hot products from lean H2/air combustion. In the present modeling approach, mean-flow information from RANS provides model input to LEM3D, which returns the scalar statistics needed for more accurate mixing and reaction calculations. Flame lift-off heights and flame structure are investigated in detail, along with other characteristics not available from RANS alone, such as the instantaneous and detailed species profiles and small-scale mixing.
Les publikasjonen

Kategori

Vitenskapelig artikkel

Oppdragsgiver

  • Research Council of Norway (RCN) / 233722
  • Sigma2 / NN9165K

Språk

Engelsk

Forfatter(e)

  • Fredrik Grøvdal
  • Sigurd Sannan
  • Jyh-Yuan Chen
  • Alan R Kerstein
  • Terese Løvås

Institusjon(er)

  • Norges teknisk-naturvitenskapelige universitet
  • SINTEF Energi AS / Termisk energi
  • University of California, Berkeley
  • USA

År

2018

Publisert i

Flow Turbulence and Combustion

ISSN

1386-6184

Årgang

101

Hefte nr.

4

Side(r)

993 - 1007

Vis denne publikasjonen hos Cristin